Scalable Direct Recycling of Cathode Black Mass from Spent Lithium‐Ion Batteries
Масштабируемая прямая переработка катодной черной массы отработавших литий-ионных аккумуляторов
2022-12-23
SCID: 54.1/sx9zc9dz
Discuss with AI
NCM cathode materialscathode black massdirect recyclingrelithiationspent lithium-ion batteries
Figures from the paper
Abstract (AI)
Abstract End of life (EoL) lithium‐ion batteries (LIBs) are piling up at an intimidating rate, which is alarming for environmental health. With further expected rapid growth of LIB use, the magnitude of spent battery accumulation is also expected to grow. LiNi x Co y Mn z O 2 (NCM) cathode materials are a dominant chemistry in high energy LIBs, and make up a huge portion of this waste accumulation. Direct recycling is one of the most promising ways to turn this waste to wealth, but has been limited to lab‐scale, due to lack of robustness, namely the tedious pretreatment required that involves toxic organic solvents. Herein, a process that integrates the pretreatment and relithiation of the cathode black mass is demonstrated. Cathode material from EoL electric vehicle (EV) batteries is treated in a 100 g per batch operation and the regenerated cathode active material demonstrates 100% electrochemical performance recovery, with 91% yield rate, and shows promise for further scale up. This process has the advantages of integration, scalability, and universality, which clears the barricade for direct recycling to move from lab to industry scale with considerable profitability.
Key Findings
1
An integrated process combines pretreatment and relithiation of cathode black mass, avoiding the tedious toxic-solvent pretreatment that limits direct recycling.
2
Regenerated cathode active material achieved 100% electrochemical performance recovery with a 91% yield rate.
3
The approach is presented as potentially profitable while addressing the growing accumulation of spent lithium-ion batteries.
4
The integrated process exhibits scalability and universality, indicating potential for transitioning direct cathode recycling from laboratory to industrial scale.
5
The process was demonstrated on cathode material from end-of-life electric-vehicle batteries at a 100 g per batch operating scale.
Research Object
Cathode black mass from spent lithium-ion batteries, particularly LiNi_xCo_yMn_zO_2 (NCM) cathode material from end-of-life electric vehicle batteries
Research Subject
The integrated pretreatment and relithiation process for scalable direct recycling, including the yield and electrochemical performance recovery of regenerated cathode active material
Publication Details
Publication Date
2022-12-23
Journal
Publisher
ISSN
Cited by
166
Access Type
Author Information
Download PDF
Subscribe to digest